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氨酰-tRNA合成酶的系统发育分析。

Phylogenetic analysis of the aminoacyl-tRNA synthetases.

作者信息

Nagel G M, Doolittle R F

机构信息

Center for Molecular Genetics, University of California, San Diego, La Jolla 92093-0634, USA.

出版信息

J Mol Evol. 1995 May;40(5):487-98. doi: 10.1007/BF00166617.

Abstract

Numerous aminoacyl-tRNA synthetase sequences have been aligned by computer and phylogenetic trees constructed from them for the two classes of these enzymes. Branching orders based on a consensus of these trees have been proposed for the two groups. Although the order of appearance can be rationalized to fit many different scenarios having to do with the genetic code, the invention of a system for translating nucleic acid sequences into polypeptide chains must have predated the existence of these proteins. In the past, a variety of schemes has been proposed for matching amino acids and tRNAs. Most of these have invoked direct recognition of one by the other, whether or not the anticodon was involved. Often ignored is the possibility of a nonprotein (presumably RNA) matchmaker for bringing the two into conjunction. If such had been the case, then the contemporary aminoacyl-tRNA synthetases could have entered the system gradually, each specific type replacing its matchmaking RNA counterpart in turn. A simple displacement scheme of this sort accommodates the existence of two different families of these enzymes, the second being introduced well before the first had undergone sufficient genetic duplications to specify the full gamut of amino acids. Such a scheme is also consistent with similar amino acids often, but not always, being the substrates of enzymes with the most similar amino acid sequences.

摘要

众多氨酰 - tRNA合成酶序列已通过计算机进行比对,并基于这些序列构建了这两类酶的系统发育树。针对这两组酶,已根据这些树的共识提出了分支顺序。尽管出现顺序可以合理化为符合许多与遗传密码相关的不同情况,但将核酸序列翻译成多肽链的系统的发明肯定早于这些蛋白质的存在。过去,已经提出了各种用于匹配氨基酸和tRNA的方案。其中大多数都涉及两者之间的直接识别,无论是否涉及反密码子。人们常常忽略了存在一种非蛋白质(可能是RNA)媒人来使两者结合的可能性。如果是这样的话,那么当代的氨酰 - tRNA合成酶可能是逐渐进入该系统的,每种特定类型依次取代其作为媒人的RNA对应物。这种简单的替代方案符合这些酶存在两个不同家族的情况,第二个家族在第一个家族经历足够的基因复制以指定全部氨基酸之前就已引入。这样的方案也与通常但并非总是具有最相似氨基酸序列的酶的底物是相似氨基酸这一情况相一致。

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